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在CpTiCl2(OC6H4X-p)/MAO催化剂(X = CH3,Cl)存在下,α-烯烃的均聚以及高级α-烯烃与乙烯的共聚反应。

Homo-polymerization of alpha-olefins and co-polymerization of higher alpha-olefins with ethylene in the presence of CpTiCl2(OC6H4X-p)/MAO catalysts (X = CH3, Cl).

作者信息

Skupinski W, Nicinski K, Jamanek D, Wieczorek Z

机构信息

Industrial Chemistry Research Institute, Department of Engineering Plastics and Special Polymers, Group of Catalytic Polymerization, Rydygiera 8, 01-793 Warsaw, Poland.

出版信息

Molecules. 2005 Jul 4;10(6):659-71. doi: 10.3390/10060659.

Abstract

Cyclopentadienyl-titanium complexes containing -OC6H4X ligands (X = Cl,CH3) activated with methylaluminoxane (MAO) were used in the homo-polymerization of ethylene, propylene, 1-butene, 1-pentene, 1-butene, and 1-hexene, and also in co-polymerization of ethylene with the alpha-olefins mentioned. The -X substituents exhibit different electron donor-acceptor properties, which is described by Hammett's factor (sigma). The chlorine atom is electron acceptor, while the methyl group is electron donor. These catalysts allow the preparation of polyethylene in a good yield. Propylene in the presence of the catalysts mentioned dimerizes and oligomerizes to trimers and tetramers at 25 degrees C under normal pressure. If the propylene pressure was increased to 7 atmospheres,CpTiCl2(OC6H4CH3)/MAO catalyst at 25 degrees gave mixtures with different contents of propylene dimers, trimers and tetramers. At 70 degrees C we obtained only propylene trimer. Using the catalysts with a -OC(6)H(4)Cl ligand we obtained atactic polymers with M(w) 182,000 g/mol (at 25 degrees C) and 100,000 g/mol (at 70 degrees C). The superior activity of the CpTiCl2(OC6H4Cl)/MAO catalyst used in polymerization of propylene prompted us to check its activity in polymerization of higher alpha-olefins (1-butene, 1-pentene, 1-hexene)and in co-polymerization of these olefins with ethylene. However, when homo-polymerization was carried out in the presence of this catalyst no polymers were obtained. Gas chromatography analysis revealed the presence of dimers. The activity of the CpTiCl2(OC6H4Cl)/MAO catalyst in the co-polymerization of ethylene with higher alpha-olefins is limited by the length of the co-monomer carbon chain. Hence, the highest catalyst activities were observed in co-polymerization of ethylene with propylene (here a lower pressure of the reagents and shorter reaction time were applied to obtain catalytic activity similar to that for other co-monomers). For other co-monomers the activity of the catalyst decreases as follows: propylene >1-butene > 1-pentene >> 1-hexene. In the case of co-polymerization of ethylene with propylene, besides an increase in catalytic activity, an increase in the average molecular weight M(w) of the polymer was observed. Other co- monomers used in this study caused a decrease of molecular weight. A significant increase in molecular weight distribution (M(w)/M(n)) evidences a great variety of polymer chains formed during the reaction.

摘要

含有-OC6H4X配体(X = Cl、CH3)并由甲基铝氧烷(MAO)活化的环戊二烯基钛配合物被用于乙烯、丙烯、1-丁烯、1-戊烯、1-己烯的均聚反应,以及乙烯与上述α-烯烃组成的共聚反应。-X取代基具有不同的电子供体-受体性质,这由哈米特因子(σ)来描述。氯原子是电子受体,而甲基是电子供体。这些催化剂能以良好的产率制备聚乙烯。在上述催化剂存在下,丙烯在25℃常压下会二聚和齐聚形成三聚体和四聚体。如果将丙烯压力提高到7个大气压,25℃下的CpTiCl2(OC6H4CH3)/MAO催化剂会得到含有不同比例丙烯二聚体、三聚体和四聚体的混合物。在70℃时,我们仅得到了丙烯三聚体。使用带有-OC(6)H(4)Cl配体的催化剂,我们得到了无规聚合物,其Mw在25℃时为182,000 g/mol,在70℃时为100,000 g/mol。用于丙烯聚合的CpTiCl2(OC6H4Cl)/MAO催化剂的优异活性促使我们检验其在更高α-烯烃(1-丁烯、1-戊烯、1-己烯)聚合以及这些烯烃与乙烯共聚反应中的活性。然而,当在该催化剂存在下进行均聚反应时,未得到聚合物。气相色谱分析表明存在二聚体。CpTiCl2(OC6H4Cl)/MAO催化剂在乙烯与更高α-烯烃共聚反应中的活性受共聚单体碳链长度限制。因此,在乙烯与丙烯的共聚反应中观察到了最高的催化剂活性(此处采用较低的试剂压力和较短的反应时间以获得与其他共聚单体类似的催化活性)。对于其他共聚单体,催化剂活性按以下顺序降低:丙烯>1-丁烯>1-戊烯>>1-己烯。在乙烯与丙烯的共聚反应中,除了催化活性增加外,还观察到聚合物的平均分子量Mw增加。本研究中使用的其他共聚单体导致分子量降低。分子量分布(Mw/Mn)的显著增加表明反应过程中形成了多种聚合物链。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fae5/6147526/0968de282eae/molecules-10-00659-g001.jpg

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